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Hydrogenated amorphous silicon nitride photonic crystals for improved-performance surface electromagnetic wave biosensors

机译:用于性能提高的表面电磁波生物传感器的氢化非晶硅氮化硅光子晶体

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摘要

We exploit the properties of surface electromagnetic waves propagating at the surface of finite one dimensional photonic crystals to improve the performance of optical biosensors with respect to the standard surface plasmon resonance approach. We demonstrate that the hydrogenated amorphous silicon nitride technology is a versatile platform for fabricating one dimensional photonic crystals with any desirable design and operating in a wide wavelength range, from the visible to the near infrared. We prepared sensors based on photonic crystals sustaining either guided modes or surface electromagnetic waves, also known as Bloch surface waves. We carried out for the first time a direct experimental comparison of their sensitivity and figure of merit with surface plasmon polaritons on metal layers, by making use of a commercial surface plasmon resonance instrument that was slightly adapted for the experiments. Our measurements demonstrate that the Bloch surface waves on silicon nitride photonic crystals outperform surface plasmon polaritons by a factor 1.3 in terms of figure of merit.
机译:我们利用在有限的一维光子晶体表面传播的表面电磁波的特性来提高光学生物传感器相对于标准表面等离子体激元共振方法的性能。我们证明了氢化非晶氮化硅技术是一种通用平台,可用于制造具有任何所需设计的一维光子晶体,并在从可见光到近红外的宽波长范围内运行。我们基于光子晶体制备了传感器,这些光子晶体既可以维持导模也可以维持表面电磁波(也称为Bloch表面波)。我们首次通过使用略微适合实验的商用表面等离子体激元共振仪器,对金属层上表面等离子体激元极化子的灵敏度和品质因数进行了直接实验比较。我们的测量表明,就品质因数而言,氮化硅光子晶体上的Bloch表面波的性能优于表面等离激元极化子。

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